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    • 11. 发明申请
    • PRESSURIZED ELECTROLYSIS STACK WITH THERMAL EXPANSION CAPABILITY
    • 具有热膨胀能力的压电电堆
    • US20100078317A1
    • 2010-04-01
    • US12242767
    • 2008-09-30
    • Richard Scott Bourgeois
    • Richard Scott Bourgeois
    • C25B9/18
    • C25B9/18Y10T29/49002
    • The present techniques provide systems and methods for mounting an electrolyzer stack in an outer shell so as to allow for differential thermal expansion of the electrolyzer stack and shell. Generally, an electrolyzer stack may be formed from a material with a high coefficient of thermal expansion, while the shell may be formed from a material having a lower coefficient of thermal expansion. The differences between the coefficients of thermal expansion may lead to damage to the electrolyzer stack as the shell may restrain the thermal expansion of the electrolyzer stack. To allow for the differences in thermal expansion, the electrolyzer stack may be mounted within the shell leaving a space between the electrolyzer stack and shell. The space between the electrolyzer stack and the shell may be filled with a non-conductive fluid to further equalize pressure inside and outside of the electrolyzer stack.
    • 本技术提供了将电解器堆叠安装在外壳中以便允许电解堆和壳体的差分热膨胀的系统和方法。 通常,电解堆叠可以由具有高热膨胀系数的材料形成,而壳可以由具有较低热膨胀系数的材料形成。 热膨胀系数之间的差异可能导致电解槽堆的损坏,因为外壳可能会抑制电解堆的热膨胀。 为了允许热膨胀的差异,可以将电解器堆叠安装在壳体内,留下电解堆和壳之间的空间。 电解堆和壳之间的空间可以填充有非导电流体,以进一步均衡电解堆的内部和外部的压力。
    • 13. 发明申请
    • ELECTROLYZER MODULE FORMING METHOD AND SYSTEM
    • 电解质模块成型方法与系统
    • US20100081047A1
    • 2010-04-01
    • US12242793
    • 2008-09-30
    • Richard Scott Bourgeois
    • Richard Scott Bourgeois
    • H01M6/46
    • C25B9/206Y10T29/49108
    • Embodiments of the present techniques provide electrolyzers made using thermoformed electrode assemblies and diaphragm assemblies. Each electrode assembly is made from two plastic rings and an electrode plate using a twin sheet thermoforming technique. A first plastic ring is laid in a mold having the appropriate shape to form the electrode assembly. The electrode plate is laid on top of the first plastic ring and is generally centered on the ring. The second plastic ring is laid over the electrode plate, and is generally centered over the electrode plate. The plastic is heated to soften the plastic, and a vacuum is pulled on the mold to pull the softened plastic into the shape of the mold. The mold is closed over the assembly to seal the two plastic rings together. After cooling, the molded part may be removed, resulting in a hollow plastic rim surrounding an electrode plate.
    • 本技术的实施例提供使用热成型电极组件和隔膜组件制造的电解器。 每个电极组件由两个塑料环和使用双板热成型技术的电极板制成。 将第一塑料环放置在具有适当形状的模具中以形成电极组件。 电极板放置在第一塑料环的顶部,并且通常以环为中心。 第二塑料环放置在电极板上,并且通常位于电极板的中心。 将塑料加热以软化塑料,并将模具上的真空拉到模具上以将软化的塑料拉入模具的形状。 将模具封闭在组件上以将两个塑料环密封在一起。 在冷却之后,可以去除模制部件,导致围绕电极板的中空塑料边缘。
    • 16. 发明授权
    • Methods and apparatus for isolating solid oxide fuel cells
    • 固体氧化物燃料电池组装方法及装置
    • US07358005B2
    • 2008-04-15
    • US10665942
    • 2003-09-18
    • Richard Scott Bourgeois
    • Richard Scott Bourgeois
    • H01M2/00H01M8/00
    • H01M8/2432H01M8/0273H01M8/04246H01M8/2425H01M8/2483
    • A fuel cell stack assembly includes at least a first fuel cell and a second fuel cell electrically coupled together such that at least one sealed passage extends between the first and second fuel cells. Each of the fuel cells includes at least one hollow manifold that includes a wall extending between a first end and a second end. Each wall defines a chamber therein, and includes at least one opening extending therethrough in flow communication with the chamber. The fuel cell stack assembly also includes at least one fuel cell isolation device coupled in flow communication with each fuel cell hollow manifold. The at least one fuel cell isolation device is variably positionable during fuel cell stack assembly operation for selectively stopping fluid flow through at least one of the fuel cells.
    • 燃料电池堆组件包括至少第一燃料电池和第二燃料电池,其电耦合在一起,使得至少一个密封通道在第一和第二燃料电池之间延伸。 每个燃料电池包括至少一个中空歧管,其包括在第一端和第二端之间延伸的壁。 每个壁在其中限定一个室,并且包括与室流动连通的至少一个通过其延伸的开口。 燃料电池堆组件还包括与每个燃料电池中空歧管流动连通地联接的至少一个燃料电池隔离装置。 所述至少一个燃料电池隔离装置在燃料电池堆组装操作期间可变地定位,以选择性地阻止流过至少一个燃料电池的流体。
    • 18. 发明授权
    • Electrolyzer module forming method and system
    • 电解液模块成型方法及系统
    • US08277620B2
    • 2012-10-02
    • US12242793
    • 2008-09-30
    • Richard Scott Bourgeois
    • Richard Scott Bourgeois
    • C25B9/08C25C7/00C25C7/02C25C7/04B28B1/44B28B21/42
    • C25B9/206Y10T29/49108
    • Embodiments of the present techniques provide electrolyzers made using thermoformed electrode assemblies and diaphragm assemblies. Each electrode assembly is made from two plastic rings and an electrode plate using a twin sheet thermoforming technique. A first plastic ring is laid in a mold having the appropriate shape to form the electrode assembly. The electrode plate is laid on top of the first plastic ring and is generally centered on the ring. The second plastic ring is laid over the electrode plate, and is generally centered over the electrode plate. The plastic is heated to soften the plastic, and a vacuum is pulled on the mold to pull the softened plastic into the shape of the mold. The mold is closed over the assembly to seal the two plastic rings together. After cooling, the molded part may be removed, resulting in a hollow plastic rim surrounding an electrode plate.
    • 本技术的实施例提供使用热成型电极组件和隔膜组件制造的电解器。 每个电极组件由两个塑料环和使用双板热成型技术的电极板制成。 将第一塑料环放置在具有适当形状的模具中以形成电极组件。 电极板放置在第一塑料环的顶部,并且通常以环为中心。 第二塑料环放置在电极板上,并且通常位于电极板的中心。 将塑料加热以软化塑料,并将模具上的真空拉到模具上以将软化的塑料拉入模具的形状。 将模具封闭在组件上以将两个塑料环密封在一起。 在冷却之后,可以去除模制部件,导致围绕电极板的中空塑料边缘。